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Spatially resolved optical spectroscopy on natural quantum dots
A. Zrenner
, A. Schaller
, M. Markmann
, M. Hagn
, M. Arzberger
, D. Henry
,
G. Abstreiter
, G. Böhm
, G. Weimann
TUM Emeriti of Excellence
Walter Schottky Institut
Research output
:
Contribution to journal
›
Article
›
peer-review
7
Scopus citations
Overview
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Keyphrases
Cathodoluminescence
25%
Charge Injection
25%
Complete Separation
25%
Coupled Quantum Wells
50%
Electric Field (E-field)
25%
Exciton
25%
Excitonic
50%
GaAs Quantum Well
25%
Gallium Arsenide
25%
Growth-related
25%
InGaAs Quantum Dots
50%
Interface Problem
25%
Local Probes
25%
Optical Experiment
50%
Optical Spectroscopy
100%
Quantum Dots
100%
Quantum Well Structure
50%
Sampling Design
25%
Scanning Tunneling Microscope
25%
Spatially Resolved
100%
Spatially Resolved Spectroscopy
25%
Spectral Linewidth
25%
Spin Orientation
25%
Spin-polarized
25%
Well Width
25%
Zeeman
25%
Zeeman Sublevels
25%
Physics
Cathodoluminescence
16%
Electric Field
16%
Exciton
16%
Ground State
33%
Linewidth
16%
Quantum Dot
100%
Quantum Wells
50%
Scanning Tunneling Microscope
16%
Spin Polarization
16%